Humidifying device for agaricus bisporus house

By introducing humidification and ventilation components into the humidification device for mushroom cultivation rooms, and utilizing water pumps and servo motors to achieve automatic humidification and ventilation, the problem of large size and manual movement required by existing devices has been solved, thus improving practicality and efficiency.

CN223730431UActive Publication Date: 2025-12-30WUTAI SHANZHEN BIOTECHNOLOGY CO LTD
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Patent Information

Application Number
CN202520270109.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-20
Publication Date
2025-12-30
Estimated Expiration
2035-02-20

AI Technical Summary

Technical Problem

The existing humidification devices for mushroom cultivation rooms are large in size and require manual movement, resulting in poor practicality.

Method used

A humidification device for a mushroom cultivation room of Agaricus bisporus was designed, which includes a humidification component and a ventilation component. Automatic humidification and ventilation are achieved by using a water pump and a servo motor. The water pump and servo motor 1 in the humidification component drive the rectangular column and connecting column to rotate, thereby achieving humidification of the atomizing nozzle. The servo motor 2 in the ventilation component drives the fan blades to rotate, thereby achieving ventilation inside the chamber.

Benefits of technology

The humidification and ventilation processes are automated, which improves the practicality of the device, reduces manual operation, and enhances the humidification effect and ventilation efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of agaricus bisporus processing equipment, in particular to an agaricus bisporus house humidifying device which comprises a supporting column, a humidifying assembly is fixed to the surface of the top of the supporting column, a ventilation assembly is arranged in the humidifying assembly, and the humidifying assembly comprises a box body fixed to the surface of the top of the supporting column. A water pump is fixed to the surface of the bottom of the box body, a connecting pipe is fixed to the surface of the water pump, an atomizing nozzle is fixed to the side surface of the connecting pipe, and a collecting box is fixed to the surface of the top of the box body. A box body, a water pump and a first servo motor are arranged in the humidifying assembly, so that when a user starts the water pump and the first servo motor, the water pump can convey water in a collecting box into a connecting pipe, an atomizing spray head is used for humidifying, meanwhile, the first servo motor and the first servo motor are started to drive a first rectangular column and a connecting column to rotate, and the humidifying effect is achieved. Therefore, the annular block and the planting box can be driven to rotate, and the humidifying effect and practicability are improved.
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Description

Technical Field

[0001] This utility model relates to the field of button mushroom processing equipment, and in particular to a humidification device for button mushroom growing rooms. Background Technology

[0002] Button mushrooms (Agaricus bisporus) are fungi belonging to the family Agaricaceae and the genus Agaricus. They are also known as white mushrooms, button mushrooms, and foreign mushrooms. The fruiting body of *Agaricus bisporus* is medium-sized, with a cap 5-12 cm wide. Initially hemispherical, it later flattens out, is white, smooth, and slightly drier, gradually turning yellow. The margin is initially rolled inwards. The flesh is white, thick, and turns slightly pinkish when injured, possessing the characteristic odor of mushrooms. The gills are initially pink, later turning brown to dark brown, dense, narrow, free, and of unequal length. The stipe is 4.5-9 cm long and 1.5-3.5 cm thick, white, smooth, silky, nearly cylindrical, and soft or solid internally. The annulus is single-layered, white, membranous, located in the middle of the stipe, and easily detached.

[0003] Regarding the aforementioned technologies, the inventors believe that the following defects exist: the existing humidification devices for button mushroom cultivation rooms are bulky and require manual movement when humidifying button mushrooms, resulting in poor practicality. Utility Model Content

[0004] In order to improve the existing humidification devices for button mushroom cultivation rooms, which are bulky and require manual movement when humidifying button mushrooms, resulting in poor practicality, this application provides a humidification device for button mushroom cultivation rooms.

[0005] This application provides a humidification device for a mushroom cultivation room, employing the following technical solution: A humidification device for a mushroom cultivation room includes a support column, a humidification component fixed to the top surface of the support column, and a ventilation component inside the humidification component. The humidification component includes a box fixed to the top surface of the support column, a water pump fixed to the bottom surface of the box, a connecting pipe fixed to the surface of the water pump, and an atomizing nozzle fixed to the side surface of the connecting pipe. A collection box is fixed to the top surface of the box, a T-shaped pipe is fixed to the side surface of the water pump, and a control valve is fixedly installed on the surface of the T-shaped pipe. A servo motor is fixed to the bottom surface of the box, and a rectangular column is fixed to the extension shaft of the servo motor. A connecting column is sleeved on the top surface of the rectangular column, and an annular block is fixed to the surface of the connecting column. A planting box is provided on the top surface of the annular block.

[0006] Further, a limiting post is fixed to the bottom surface of the planting box, and through holes are opened on the surfaces of the planting box and the annular block. A rectangular post II is fixed to the top surface of the connecting post, a sleeve is fitted on the top surface of the rectangular post II, and a bearing is fixed to the surface of the sleeve. A round block is fixed to the top surface of the bearing, and a sliding post is fixed to the top surface of the round block. A spring I is fitted to the surface of the sliding post.

[0007] In a further configuration, the bottom surface of the planting box contacts the top surface of the annular block, and the limiting post penetrates the annular block and extends to its exterior.

[0008] Furthermore, the surface of the box is fitted with a door via a hinge, and an acrylic sheet is fixed to the surface of the door.

[0009] Furthermore, the side surface of the box is fixed with a ventilation groove, and the top surface of the box is provided with a circular groove, the inner wall of which is fixed with a filter screen.

[0010] Further, the ventilation assembly includes a connecting ring fixed to the top surface of the housing, and a sleeve fixed to the surface of the connecting ring. A fixing cylinder is provided on the inner side of the connecting ring, and a mounting bracket is fixed to the inner wall of the fixing cylinder. A second servo motor is fixed to the surface of the mounting bracket, and a fan blade is fixed to the extended shaft of the second servo motor.

[0011] Furthermore, the sleeve has a sliding groove on its surface, and a second spring is provided inside the sleeve. A protruding post is movably connected inside the sleeve, and a sliding post is fixed on the surface of the protruding post.

[0012] Compared with related technologies, the humidification device for mushroom cultivation rooms provided by this utility model has the following advantages:

[0013] Beneficial effects:

[0014] This utility model provides a humidification device for mushroom cultivation rooms. By setting a humidification component on the surface of the support column, and the humidification component contains a box, a water pump and a servo motor, when the user starts the water pump and the servo motor, the water pump can transport the water in the collection box to the inside of the connecting pipe, and humidify it using the atomizing nozzle. At the same time, by starting the servo motor, the servo motor drives the rectangular column and the connecting column to rotate, which in turn drives the annular block and the planting box to rotate, thereby improving the humidification effect and practicality.

[0015] This utility model provides a humidification device for mushroom cultivation rooms. It features a ventilation component on the surface of the chamber, with a fixed cylinder and a second servo motor inside. When the user starts the second servo motor, the fan blades rotate, thereby ventilating the inside of the chamber and improving its practicality. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of a preferred embodiment of a humidification device for mushroom cultivation rooms provided by this utility model;

[0017] Figure 2 This is the front view of the present utility model;

[0018] Figure 3This is a bottom view of the present invention;

[0019] Figure 4 This is a main sectional view of the present invention;

[0020] Figure 5 This is a side sectional view of the present invention.

[0021] Numbered in the diagram: 1. Support column; 2. Humidification component; 201. Box; 202. Water pump; 203. Connecting pipe; 204. Atomizing nozzle; 205. Collection box; 206. T-connector; 207. Control valve; 208. Servo motor one; 209. Rectangular column one; 210. Connecting column; 211. Annular block; 212. Planting box; 213. Limiting column; 214. Through hole; 215. Rectangular column two; 216. Sleeve; 21 7. Bearing; 218. Round block; 219. Sliding column; 220. Spring 1; 221. Box door; 222. Acrylic sheet; 223. Ventilation slot; 224. Round groove; 225. Filter screen; 3. Ventilation assembly; 301. Connecting ring; 302. Sleeve; 303. Fixed cylinder; 304. Mounting bracket; 305. Servo motor 2; 306. Fan blade; 307. Slide groove; 308. Spring 2; 309. Protruding column; 310. Sliding column. Detailed Implementation

[0022] To facilitate understanding of this utility model, a more comprehensive description will be provided below with reference to the accompanying drawings. The drawings show typical embodiments of this utility model.

[0023] Example 1:

[0024] like Figure 1-5 As shown, a humidification device for a mushroom cultivation room according to this utility model includes a support column 1, a humidification component 2 fixed to the top surface of the support column 1, and a ventilation component 3 inside the humidification component 2. The humidification component 2 includes a housing 201 fixed to the top surface of the support column 1, a water pump 202 fixed to the bottom surface of the housing 201, a connecting pipe 203 fixed to the surface of the water pump 202, and an atomizing nozzle 204 fixed to the side surface of the connecting pipe 203. The top surface of the housing 201... A collection box 205 is fixed, a three-way pipe 206 is fixed on the side surface of the water pump 202, and a control valve 207 is fixedly installed on the surface of the three-way pipe 206. A servo motor 208 is fixed on the bottom surface of the box 201, and a rectangular column 209 is fixed on the extension shaft of the servo motor 208. A connecting column 210 is sleeved on the top surface of the rectangular column 209, and an annular block 211 is fixed on the surface of the connecting column 210. A planting box 212 is provided on the top surface of the annular block 211.

[0025] like Figure 1-5As shown, a limiting post 213 is fixed on the bottom surface of the planting box 212. Through holes 214 are opened on the surfaces of the planting box 212 and the annular block 211. A rectangular post 215 is fixed on the top surface of the connecting post 210. A sleeve 216 is fitted on the top surface of the rectangular post 215. A bearing 217 is fixed on the surface of the sleeve 216. A round block 218 is fixed on the top surface of the bearing 217. A sliding post 219 is fixed on the top surface of the round block 218. A spring 220 is fitted on the surface of the sliding post 219.

[0026] like Figure 1-5 As shown, the bottom surface of the planting box 212 contacts the top surface of the annular block 211, and the limiting post 213 penetrates the annular block 211 and extends to its outside.

[0027] like Figure 1-5 As shown, a door 221 is mounted on the surface of the box 201 via a hinge, and an acrylic plate 222 is fixed to the surface of the door 221.

[0028] like Figure 1-5 As shown, a ventilation groove 223 is fixed on the side surface of the box 201, and a circular groove 224 is opened on the top surface of the box 201, and a filter screen 225 is fixed on the inner wall of the circular groove 224.

[0029] During implementation, when humidification of the planting box 212 is required, the water pump 202 is started, which transports water from the collection box 205 to the connecting pipe 203 for humidification using the atomizing nozzle 204. Simultaneously, the servo motor 208 is started, which drives the rectangular column 209 and the connecting column 210 to rotate. The connecting column 210 drives the annular block 211 and the planting box 212 to rotate, improving the humidification effect and practicality. Since the surfaces of the planting box 212 and the annular block 211 are provided with through holes 214, excess water can flow into the collection box 205 for collection. By sliding the sliding column 219, the sliding column 219 can drive the round block 218, the bearing 217 and the sleeve 216 to slide. By sliding the connecting column 210, the connecting column 210 is separated from the rectangular column 209, and the connecting column 210 can be disassembled.

[0030] Example 2:

[0031] like Figure 1-5 As shown, based on Embodiment 1, this utility model provides a technical solution: the ventilation component 3 includes a connecting ring 301 fixed to the top surface of the housing 201, and a sleeve 302 is fixed to the surface of the connecting ring 301. A fixing cylinder 303 is provided on the inner side of the connecting ring 301, and a mounting bracket 304 is fixed to the inner wall of the fixing cylinder 303. A servo motor 305 is fixed to the surface of the mounting bracket 304, and a fan blade 306 is fixed to the extension shaft of the servo motor 305.

[0032] like Figure 1-5As shown, the sleeve 302 has a sliding groove 307 on its surface, and a spring 308 is provided inside the sleeve 302. A protrusion 309 is movably connected inside the sleeve 302, and a sliding post 310 is fixed on the surface of the protrusion 309.

[0033] During implementation, when ventilation is required inside the housing 201, the servo motor 2 305 is started, which drives the fan blade 306 to rotate, thereby ventilating the inside of the housing 201. By sliding the sliding column 310, the sliding column 310 can drive the protruding column 309 to slide, thereby separating the protruding column 309 from the fixed cylinder 303, and the sliding fixed cylinder 303 can be disassembled.

[0034] The advantages of this technical solution in practical applications include, but are not limited to, the following:

[0035] 1. The humidification component 2 is equipped with a housing 201, a water pump 202, and a servo motor 208. When the user starts the water pump 202 and the servo motor 208, the water pump 202 can transport the water in the collection box 205 to the inside of the connecting pipe 203, and humidify it using the atomizing nozzle 204. At the same time, by starting the servo motor 208, the servo motor 208 drives the rectangular column 209 and the connecting column 210 to rotate, which in turn drives the ring block 211 and the planting box 212 to rotate, thereby improving the humidification effect and practicality.

[0036] 2. The ventilation component 3 is equipped with a fixed cylinder 303 and a servo motor 305. When the user starts the servo motor 305, the servo motor 305 can drive the fan blade 306 to rotate, thereby ventilating the inside of the housing 201 and improving its practicality.

[0037] In this technical solution, when humidifying the planting box 212 is required, the water pump 202 is activated. The water pump 202 transports water from the collection box 205 to the connecting pipe 203, where it is humidified using the atomizing nozzle 204. Simultaneously, the servo motor 208 is activated, which drives the rectangular column 209 and the connecting column 210 to rotate. The connecting column 210 then drives the annular block 211 and the planting box 212 to rotate, improving the humidification effect and practicality. Since the surfaces of the planting box 212 and the annular block 211 are provided with through holes 214, excess water can flow into the collection box 205 for collection. The sliding column 219 can drive the circular block 218, bearing 217 and sleeve 216 to slide, and the sliding connecting column 210 can separate the connecting column 210 from the rectangular column 209, so that the connecting column 210 can be disassembled. When ventilation is needed inside the housing 201, the servo motor 305 is started, which drives the fan blade 306 to rotate, thereby ventilating the inside of the housing 201. By sliding the sliding column 310, the sliding column 310 can drive the protruding column 309 to slide, thereby separating the protruding column 309 from the fixed cylinder 303, so that the fixed cylinder 303 can be disassembled.

[0038] The above are merely exemplary embodiments of this disclosure and should not be construed as limiting the scope of this disclosure. Any equivalent changes and modifications made in accordance with the teachings of this disclosure shall still fall within the scope of this disclosure. This application is intended to cover any variations, uses, or adaptations of this disclosure that follow the general principles of this disclosure and include common knowledge or customary techniques in the art not described in this disclosure.

Claims

1. A double-spore Agaricus mushroom house humidifying device comprising a support column (1), characterized in that: The top surface of the support column (1) is fixed with a humidifying assembly (2), and the inside of the humidifying assembly (2) is provided with a ventilation assembly (3); The humidifying assembly (2) comprises a box body (201) fixed to the top surface of the support column (1), and the bottom surface of the box body (201) is fixed with a water pump (202), the surface of the water pump (202) is fixed with a connecting pipe (203), the side surface of the connecting pipe (203) is fixed with an atomizing nozzle (204), the top surface of the box body (201) is fixed with a collection box (205), the side surface of the water pump (202) is fixed with a tee pipe (206), the surface of the tee pipe (206) is fixedly installed with a control valve (207), the bottom surface of the box body (201) is fixed with a servo motor (208), the protruding shaft of the servo motor (208) is fixed with a rectangular column (209), the top surface of the rectangular column (209) is sleeved with a connecting column (210), the surface of the connecting column (210) is fixed with an annular block (211), and the top surface of the annular block (211) is provided with a planting box (212).

2. The Agaricus bisporus mushroom house humidifying device according to claim 1, characterized in that, The bottom surface of the planting box (212) is fixed with a limiting column (213), and the surfaces of the planting box (212) and the annular block (211) are both provided with through holes (214), the top surface of the connecting column (210) is fixed with a rectangular column (215), the top surface of the rectangular column (215) is sleeved with a sleeve pipe (216), the surface of the sleeve pipe (216) is fixed with a bearing (217), the top surface of the bearing (217) is fixed with a circular block (218), the top surface of the circular block (218) is fixed with a sliding column (219), and the surface of the sliding column (219) is sleeved with a spring (220).

3. The Agaricus bisporus mushroom house humidifying device according to claim 2, characterized in that, The bottom surface of the planting box (212) is in contact with the top surface of the annular block (211), the limiting column (213) penetrates through the annular block (211) and extends to the outside thereof.

4. The Agaricus bisporus mushroom house humidifying device according to claim 1, characterized in that, The surface of the box body (201) is hingedly installed with a box door (221), and the surface of the box door (221) is fixed with an acrylic plate (222).

5. The Agaricus bisporus mushroom house humidifying device according to claim 1, characterized in that, The side surface of the box body (201) is fixed with a ventilation groove (223), the top surface of the box body (201) is provided with a circular groove (224), and the inner wall of the circular groove (224) is fixed with a filter screen (225).

6. The Agaricus bisporus mushroom house humidifying device according to claim 1, characterized in that, The ventilation assembly (3) comprises a connecting ring (301) fixed to the top surface of the box body (201), and the surface of the connecting ring (301) is fixed with a sleeve (302), the inner side of the connecting ring (301) is provided with a fixed cylinder (303), the inner wall of the fixed cylinder (303) is fixed with a mounting bracket (304), the surface of the mounting bracket (304) is fixed with a servo motor (305), and the protruding shaft of the servo motor (305) is fixed with a fan blade (306).

7. The Agaricus bisporus mushroom house humidifying device according to claim 6, characterized in that, The surface of the sleeve (302) is provided with a sliding groove (307), and the inside of the sleeve (302) is provided with a spring two (308); the inside of the sleeve (302) is movably connected with a convex column (309), and the surface of the convex column (309) is fixed with a sliding column (310).